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BACE1 缺失导致神经元活动改变和神经退行性变。

BACE1 deficiency causes altered neuronal activity and neurodegeneration.

机构信息

Department of Neurosciences, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio 44195, USA.

出版信息

J Neurosci. 2010 Jun 30;30(26):8819-29. doi: 10.1523/JNEUROSCI.1334-10.2010.

Abstract

BACE1 is required for the release of beta-amyloid (Abeta) in vivo, and inhibition of BACE1 activity is targeted for reducing Abeta generation in Alzheimer's patients. To further our understanding of the safe use of BACE1 inhibitors in human patients, we aimed to study the physiological functions of BACE1 by characterizing BACE1-null mice. Here, we report the finding of spontaneous behavioral seizures in BACE1-null mice. Electroencephalographic recordings revealed abnormal spike-wave discharges in BACE1-null mice, and kainic acid-induced seizures also occurred more frequently in BACE1-null mice compared with their wild-type littermates. Biochemical and morphological studies showed that axonal and surface levels of Na(v)1.2 were significantly elevated in BACE1-null mice, consistent with the increased fast sodium channel current recorded from BACE1-null hippocampal neurons. Patch-clamp recording also showed altered intrinsic firing properties of isolated BACE1-null hippocampal neurons. Furthermore, population spikes were significantly increased in BACE1-null brain slices, indicating hyperexcitability of BACE1-null neurons. Together, our results suggest that increased sodium channel activity contributes to the epileptic behaviors observed in BACE1-null mice. The knowledge from this study is crucial for the development of BACE1 inhibitors for Alzheimer's therapy and to the applicative study of epilepsy.

摘要

BACE1 对于β-淀粉样蛋白(Abeta)在体内的释放是必需的,抑制 BACE1 活性的目的是减少阿尔茨海默病患者的 Abeta 生成。为了进一步了解 BACE1 抑制剂在人类患者中的安全使用,我们旨在通过表征 BACE1 敲除小鼠来研究 BACE1 的生理功能。在这里,我们报告了 BACE1 敲除小鼠自发性行为性癫痫发作的发现。脑电图记录显示 BACE1 敲除小鼠出现异常尖波-棘波放电,与野生型同窝仔相比,BACE1 敲除小鼠更容易发生海人酸诱导的癫痫发作。生化和形态学研究表明,BACE1 敲除小鼠的轴突和表面 Na(v)1.2 水平显著升高,与从 BACE1 敲除海马神经元记录到的快速钠通道电流增加一致。膜片钳记录还显示,分离的 BACE1 敲除海马神经元的固有放电特性发生改变。此外,BACE1 敲除脑片中的群体峰明显增加,表明 BACE1 敲除神经元的兴奋性增加。总之,我们的结果表明,钠离子通道活性的增加导致了 BACE1 敲除小鼠观察到的癫痫行为。这项研究的结果对于阿尔茨海默病治疗中 BACE1 抑制剂的开发以及癫痫的应用研究至关重要。

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